Application of nanotechnology for enhancing oil recovery – A review

Применение нанотехнологий для повышения нефтеотдачи: обзор
Quan Xie, Chegenizadeh Negin, Saeedi Ali
2016-11-16

enhanced oil recoveryinterfacial tensionnanoparticlesnanotechnologyreservoir wettability
Nanotechnology has attracted a great attention in enhancing oil recovery (EOR) due to the cost-effective and environmental friendly manner. The size of nanoparticles for EOR usually is in a range of 1–100 nm, which may slightly differ from various international organisations. Nanoparticles exhibit significantly different properties compared to the same fine or bulk molecules because of much higher concentration of atoms at their surface as a result of ultra-small size. In particular, one of the most useful and fascinating properties of these particles is to creating a massive diffusion driving force due to the large surface area, especially at high temperatures. Previous studies have shown that nanoparticles can enhance oil recovery by shifting reservoir wettability towards more water-wet and reducing interfacial tension, yet this area is still open for discussion. It is worth noting that the potential of nanoparticles to reduce the oil viscosity, increase the mobility ratio, and to alter the reservoir permeability has not been investigated to date. Depending on the operational conditions of the EOR process, some nanoparticles perform more effectively than others, thus leading to different levels of enhanced recovery. In this study, we aim to provide a summary on each of the popular and available nanoparticles in the market and list their optimum operational conditions. We classified nanoparticles into the three categories of metal oxide, organic and inorganic particles in this article.
1
Nanoparticle effectiveness varies with operational conditions, so different particles provide different levels of enhanced recovery and require optimized conditions.
2
Nanoparticles, typically 1–100 nm, are reviewed as potentially cost-effective and environmentally friendly agents for enhanced oil recovery.
3
Reported EOR mechanisms include shifting reservoir wettability toward more water-wet conditions and reducing oil–water interfacial tension.
4
The effects of nanoparticles on oil viscosity, mobility ratio, and reservoir permeability remained insufficiently investigated according to the reviewed literature.
5
The review classifies commercially available EOR nanoparticles into metal oxide, organic, and inorganic categories and summarizes their optimum operating conditions.
6
Their high surface-area-to-volume ratio generates strong diffusion driving forces, particularly at elevated temperatures, distinguishing nanoparticles from bulk materials.

nanoparticle-assisted enhanced oil recovery in petroleum reservoirs

the effects and optimal operational conditions of different nanoparticle types on oil-recovery mechanisms and performance, including wettability alteration, interfacial-tension reduction, viscosity and mobility changes, and permeability alteration

Publication Details
Publication Date
2016-11-16
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Quan Xie
Chegenizadeh Negin
Saeedi Ali
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%